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拟南芥NahG对菜豆丁香假单胞菌非寄主抗性的丧失是由于水杨酸的降解产物所致。

Loss of non-host resistance of Arabidopsis NahG to Pseudomonas syringae pv. phaseolicola is due to degradation products of salicylic acid.

作者信息

van Wees Saskia C M, Glazebrook Jane

机构信息

Torrey Mesa Research Institute, Syngenta Research and Technology, 3115 Merryfield Row, San Diego, CA 92121, USA.

出版信息

Plant J. 2003 Feb;33(4):733-42. doi: 10.1046/j.1365-313x.2003.01665.x.

Abstract

In plants carrying the NahG transgene, salicylate hydroxylase converts salicylic acid (SA) to catechol. Arabidopsis NahG plants are defective in non-host resistance to Pseudomonas syringae pv. phaseolicola strain 3121 (Psp), suggesting that resistance requires SA signaling. However, several mutants with defects in SA signaling, including eds1, pad4, eds5, sid2, and npr1, remain resistant to Psp, demonstrating that susceptibility of NahG plants is not due to absence of SA. SA synthesis is blocked in sid2NahG double mutants, but resistance to Psp is retained. Therefore, it must be the degradative action of NAHG on SA that causes the loss of resistance of NahG to Psp. Treatment of plants with catechol compromised Psp resistance suggesting that the effect of NahG on resistance results from catechol production. Application of catalase to NahG or catechol-treated wild-type plants partially restored resistance to Psp, suggesting that the deleterious effect of catechol results from inappropriate production of hydrogen peroxide. These results indicate that conclusions about SA requirements based solely on phenotypes of NahG plants should be re-evaluated.

摘要

在携带NahG转基因的植物中,水杨酸羟化酶将水杨酸(SA)转化为儿茶酚。拟南芥NahG植物对丁香假单胞菌菜豆致病变种3121(Psp)的非寄主抗性存在缺陷,这表明抗性需要SA信号传导。然而,一些在SA信号传导方面存在缺陷的突变体,包括eds1、pad4、eds5、sid2和npr1,对Psp仍具有抗性,这表明NahG植物的感病性并非由于缺乏SA所致。在sid2NahG双突变体中SA合成被阻断,但对Psp的抗性得以保留。因此,必定是NAHG对SA的降解作用导致NahG对Psp失去抗性。用儿茶酚处理植物会削弱Psp抗性,这表明NahG对抗性的影响源于儿茶酚的产生所导致NahG对Psp失去抗性。用儿茶酚处理植物会削弱Psp抗性,这表明NahG对抗性的影响源于儿茶酚的产生所导致NahG对Psp失去抗性表明NahG对抗性的影响源于儿茶酚的产生。将过氧化氢酶应用于NahG或经儿茶酚处理的野生型植物可部分恢复对Psp的抗性,这表明儿茶酚的有害作用源于过氧化氢产生不当。这些结果表明,仅基于NahG植物表型得出的关于SA需求的结论应重新评估。

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